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相关概念视频

Free Jet01:14

Free Jet

540
Free jets describe the flow of liquid exiting a reservoir through an opening into the atmosphere without resistance. The velocity (v) of the liquid jet is derived using Bernoulli's principle and expressed as:
540
Dimensional Analysis01:27

Dimensional Analysis

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Dimensional analysis is a valuable technique in fluid mechanics for simplifying complex problems by reducing them into dimensionless groups. These groups capture the essential relationships between the variables involved, allowing researchers and engineers to analyze fluid flow without dealing with each variable individually. This approach reduces the number of independent variables, allowing for easier analysis and better understanding of physical phenomena.
In fluid mechanics, dimensional...
632
Design Example: Flow Through a Fire Extinguisher01:12

Design Example: Flow Through a Fire Extinguisher

445
A fire extinguisher that uses pressurized water relies on fluid dynamics principles to generate a high-velocity stream capable of suppressing flames. The water is stored at a much higher pressure inside the extinguisher than the surrounding atmosphere. This pressure difference forces the water to flow rapidly when the extinguisher is activated, and the behavior of the water as it exits the nozzle can be understood using fundamental equations of fluid dynamics.
The key to understanding how the...
445
Major Losses in Pipes01:28

Major Losses in Pipes

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When a fluid flows through a pipe, it experiences energy losses due to frictional resistance along the pipe walls, known as major losses. These energy losses result in a pressure drop, which varies based on the flow conditions — whether laminar or turbulent — and the specific physical properties of the fluid and pipe.
Fluid flow can be classified as laminar or turbulent, primarily based on the Reynolds number. This dimensionless number reflects the relative influence of inertial to viscous...
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Pipe Flowrate Measurement: Problem Solving01:28

Pipe Flowrate Measurement: Problem Solving

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A spray tank system is engineered to uniformly distribute a pest-control liquid across plants by using a pressurized mechanism. The tank, pressurized to 150 kPa, holds the pesticide at a height of 0.80 meters. Liquid flows from the tank through a 1.9 meter pipe with a diameter of 0.015 meters, angled at 0.698 radians, ultimately reaching a 0.007 meter nozzle that sprays the pesticide. Accurate calculation of the system's flow rate is crucial to ensure uniform application, and this is achieved...
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Single Pipe Systems01:24

Single Pipe Systems

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In pipe flow analysis, problems are typically categorized into three types — Type I, Type II, and Type III — based on the known parameters and the desired outcome. Each type of problem addresses specific engineering requirements using fluid properties, pipe characteristics, and operational conditions.
In a Type I problem, fluid properties (density and viscosity), pipe characteristics (including diameter, length, and surface roughness), and the flow rate or average velocity are...
426

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Analyzing Mixing Inhomogeneity in a Microfluidic Device by Microscale Schlieren Technique
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使用CFD进行迁移喷嘴的设计分析.

Makhsuda Juraeva1, Dong-Jin Kang1

  • 1School of Mechanical Engineering, Yeungnam University, 280 Daehak-ro, Gyoungsan 38541, Republic of Korea.

Polymers
|October 28, 2025
PubMed
概括

这项研究使用计算流体动力学 (CFD) 分析了合成纤维线的迁移喷嘴设计. 圆形通道和特定的气孔直径 (1.3毫米单,0.9毫米双) 优化流,以改善纤维生产.

科学领域:

  • 材料科学 材料科学 材料科学
  • 流体动力学 流体动力学
  • 织工程 织工程 织工程

背景情况:

  • 迁移喷嘴是合成纤维线中的关键组件.
  • 优化喷嘴设计会影响线质量和生产效率.

研究的目的:

  • 为迁移喷嘴提供基于计算流体动力学 (CFD) 的设计分析.
  • 为了研究线通道形状和空气孔参数对流的影响.

主要方法:

  • 在迁移喷嘴系统上进行了详细的CFD模拟.
  • 分析的线通道横截面形状 (正方形与圆形).
  • 多种空气孔直径 (0.6-2.0毫米) 和配置 (单/双).

主要成果:

  • 圆形线道比方形线更好,因为它会形成.
  • 空气孔直径显著影响内部流.
  • 通过1.3毫米 (单) 和0.9毫米 (双) 孔实现最佳的中心线旋转.

结论:

  • 中线旋转率是评估迁移喷嘴设计的可靠参数.
  • 根据实验数据验证了CFD结果.
关键词:
在 CFD 交易中,我们可以看到 CFD.空气孔口的空气孔口是一个空气孔.迁移喷嘴 迁移喷嘴 迁移喷嘴的旋转性 的旋转性线道道的线

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  • 设计优化可以提高合成纤维织工艺.